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Revolutionising micro optics: INL researchers develop open-source software for advanced design and modelling

Revolutionising micro optics: INL researchers develop open-source software for advanced design and modelling

INL researchers, in collaboration with Bosch Car Multimedia and Bosch Security Systems, recently published an article on Computer Physics Communications, where they introduce a new open-source Python software that democratises the design and modelling of micro optical elements and flat optics. Micro optics can replace bulky traditional optics with sleek, micro and nanostructured alternatives, enabling more advanced optical functions. These components, produced with semiconductor microfabrication techniques, require precise binary or multilevel lithography masks to translate computed designs into physical components. However, no existing tool offers a complete solution for designing, simulating, and generating these masks – until now. INL researchers developed an open-source software package to fill this gap, by providing an end-to-end solution that allows users to design, simulate, and generate lithography masks for micro optical elements. João Cunha, a Marie Skłodowska-Curie Postdoctoral Fellow at INL, explains “with this new development it is possible to create masks directly from your desired optical functions, and export them as binary or multilevel lithography files (such as GDSII and DXF) compatible with standard microfabrication tools.” “This package addressed the challenge of producing surface relief diffractive optics by discretisation of continuous topographies into mask layers, required for specific micro and nanofabrication approaches, such […]

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FUNLAYERS SUMMER SCHOOL

FUNLAYERS SUMMER SCHOOL

Training on Nanoscale Characterization and Analysis + Workshop on Transferable Skills In September, FUNLAYERS promotes a four-day initiative focused on Nanoscale Characterization and Analysis. The initiative is focused on students and early-stage researchers in nanoscience and materials science, and covers a wide range of subjects – from the basics to in-depth theoretical background and lab visits. The comprehensive programme is complemented by an insightful Workshop on Transferable Skills that will explore relevant competencies in communication, management, business, networking, and others. More information and registration link available at funlayersproject.eu/summer-school-2024

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Advanced electron microscopy to investigate magnetic layered materials

Advanced electron microscopy to investigate magnetic layered materials

In a recent study published in Nature Communications, INL researchers Loukya Boddapati and Francis Leonard Deepak, along with an international team from Korea, Spain, the U.S., and the U.K., used cutting-edge electron microscopy, including low-temperature Cryo-TEM, to explore the structural phase transitions of CrI₃. CrI₃ is a novel magnetic material which has attracted significant attention for its unique ferromagnetic properties and potential applications in spintronics. The stacking configurations in van der Waals crystals significantly influence several material properties. Previous research has shown that stacking engineering is a powerful method for achieving desired properties through layer-by-layer crystal engineering. Controlling the twist angle between artificially stacked two-dimensional (2D) materials has led to the discovery of unconventional phenomena, ranging from superconductivity to strongly correlated magnetism. This study clarifies the complex relationship between these transitions and the material’s magnetic properties. In this study, cross-sectional TEM analysis was used to identify interlayer stacking disorders in CrI3. According to Francis Leonard Deepak, “the study provides evidence of twisted stacking faults in CrI₃ and reveals changes in the relative population of twisted domains, without the anticipated transition to the rhombohedral phase at low temperatures”. “These findings underscore the importance of understanding layer-dependent stacking order and magnetic properties […]

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TOTAL-NANOSAFE II International Conference

TOTAL-NANOSAFE II International Conference

The second edition of the Conference Total-Nanosafe is back to INL. The event brings together experts in different fields related to the use of nanomaterials, nanotechnology and how these are related to different aspects of safety, regarding health and environment. Click here for more information.

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INL welcomes the new Deputy Director-General

INL welcomes the new Deputy Director-General

Professor Doctor Ado Jório de Vasconcelos appointed to be the new Deputy Director-General of INL The Council of the International Iberian Nanotechnology Laboratory (INL) has announced the appointment of Prof. Dr. Ado Jório de Vasconcelos as Deputy Director-General of INL, effective from the 2nd of September 2024. He will join the Director-General of INL, Prof. Dr. Clivia M. Sotomayor Torres, to provide strategic direction and leadership. Together, they will bring INL into a new phase that is fit for the challenges faced by research organisations in a rapidly changing world that requires bespoke science excellence and innovation as expressions of social engagement. As Deputy Director-General, Prof. Dr. Jório de Vasconcelos will be responsible for driving innovation, fostering the institute’s mission of advancing nanotechnology research and innovation and promoting the organisation’s global impact on society. Professor Dr. Ado Jório de Vasconcelos has a distinguished career as internationally acclaimed researcher, university teacher and administrator, innovator, and policy maker. He brings a particular international dimension based on his career path in the Americas. The INL community looks forward to his arrival and to working with him. INL Directorate Office

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Researchers achieve quantum breakthrough with novel quantum-to-quantum Bernoulli factory design

Researchers achieve quantum breakthrough with novel quantum-to-quantum Bernoulli factory design

Unlike classical computers, which use bits to process information as either 0s or 1s, quantum computers use quantum bits, also known as qubits, which can represent and process both 0 and 1 simultaneously thanks to a quantum property called superposition. This fundamental difference gives quantum computers the potential to solve some complex problems much more efficiently than classical computers. INL researcher Ernesto Galvão, in collaboration with Sapienza Università di Roma (Rome) and Istituto di Fotonica e Nanotecnologie (Milan), recently published a groundbreaking study in the journal Science Advances, where they describe a new set-up for a quantum-to-quantum Bernoulli factory. A Bernoulli factory is a method to manipulate randomness, using as inputs random coin flips with a certain probability distribution, and outputting coin flips with a different, desired distribution. Let us imagine we have a coin that lands on heads with some unknown probability. Now, we want to create a new coin that lands on heads with a different probability, possibly described by a function of the initial probability. The Bernoulli factory is an ingenious way to flip our original coin multiple times and use the different outcomes to simulate the new coin with the desired probability. Ernesto Galvão adds “This […]

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Instruct Hands-on Workshop

Instruct Hands-on Workshop

The Instruct Hands-on Workshop, held from October 7 to 10, 2024, is set to provide in-depth training on sample preparation for single particle analysis (SPA) by cryo-electron microscopy (cryo-EM). The workshop, hosted by a team of experts from ITQB NOVA, INL, and CNB–CSIC, aims to equip participants with best practices and the latest techniques in cryo-EM imaging. Participants will engage in a comprehensive course featuring a blend of lectures and hands-on tutorials. The lectures will delve into the principles of SPA, covering theoretical and practical aspects of preparing biological samples for negative staining and quality assessment. Practical sessions will offer hands-on experience with vitrification using a plunge-freezing device and optimising grids for sample screening with a cryo-transmission electron microscope (TEM). Attendees are encouraged to bring their samples, providing a unique opportunity to apply newly acquired skills to their specific research needs. The workshop will highlight recent advancements in protein production and stabilisation, as well as the latest technological innovations in grid preparation and sample manipulation. This integrative approach will be crucial for addressing challenging scientific projects. The workshop aims to provide participants with a holistic understanding of the integrated use of biophysics, biochemistry, and cryo-EM for protein structure determination and analysis. […]

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Instruct Hands-on Workshop on Sample Preparation for Single Particle Analysis by Cryo-Electron Microscopy

Instruct Hands-on Workshop on Sample Preparation for Single Particle Analysis by Cryo-Electron Microscopy

The Instruct Hands-on Workshop, held from October 7 to 10, 2024, is set to provide in-depth training on sample preparation for single particle analysis (SPA) by cryo-electron microscopy (cryo-EM). The workshop, hosted by a team of experts from ITQB NOVA, INL, and CNB–CSIC, aims to equip participants with best practices and the latest techniques in cryo-EM imaging. Participants will engage in a comprehensive course featuring a blend of lectures and hands-on tutorials. The lectures will delve into the principles of SPA, covering theoretical and practical aspects of preparing biological samples for negative staining and quality assessment. Practical sessions will offer hands-on experience with vitrification using a plunge-freezing device and optimising grids for sample screening with a cryo-transmission electron microscope (TEM). Attendees are encouraged to bring their samples, providing a unique opportunity to apply newly acquired skills to their specific research needs. The workshop will highlight recent advancements in protein production and stabilisation, as well as the latest technological innovations in grid preparation and sample manipulation. This integrative approach will be crucial for addressing challenging scientific projects. The workshop aims to provide participants with a holistic understanding of the integrated use of biophysics, biochemistry, and cryo-EM for protein structure determination and […]

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